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首页> 外文期刊>Renewable energy >Technology valuation of cellulosic ethanol production by Kluyveromyces marxianus CCT 7735 from sweet sorghum bagasse at elevated temperatures
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Technology valuation of cellulosic ethanol production by Kluyveromyces marxianus CCT 7735 from sweet sorghum bagasse at elevated temperatures

机译:kluyveromyces Marxianus CCT 7735在升高温度下从甜高粱甘蔗渣生产的技术估值

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摘要

Technology valuation of cellulosic ethanol production by Kluyveromyces marxianus CCT 7735 based on the concepts of circular economy was investigated. After an acid-base pretreatment followed by saccharification at 50 degrees C for 72 h, the sweet sorghum hydrolysate was used to produce ethanol at three temperatures: 37, 42, and 45 degrees C. About 17.83 g/L of cellulosic ethanol was reached at 42 degrees C in 24 h, with a yield of 2769.8 L/ha(sorghum), almost double that obtained for corn straw. This was the best cellulosic ethanol production from sweet sorghum bagasse achieved by K. marxianus strain and, therefore, it was used in the technology valuation. This analysis was carried out through the application of the profit equation, in which the revenue corresponded to ethanol sales in the global market in 2020, and the costs were defined by the activity-based costing method. An integration between 1G and 2G ethanol production, without mixing material streams, was considered to improve the technology valuation analysis. As a result, the equivalent to 17.2% of the profit obtained with the sugarcane juice ethanol was achieved for the sweet sorghum bagasse. Therefore, the technology valuation indicated the potential of sweet sorghum bagasse in the biorefinery ethanol production. (C) 2021 Elsevier Ltd. All rights reserved.
机译:基于循环经济概念,研究了Kluyveromyces Marxianus CCT 7735纤维素乙醇生产的技术估值。在酸碱预处理后,在50℃下进行糖化72小时,使用甜高粱水解产物在三个温度下产生乙醇:37,42和45℃。达到约17.83g / L的纤维素乙醇24小时42℃,产率为2769.8升/小时(高粱),几乎是玉米秸秆的两倍。这是来自K.Marxianus菌株的甜高粱甘蔗渣的最佳纤维素乙醇生产,因此,它用于技术估值。通过利润方程的应用进行了该分析,其中2020年全球市场的收入与乙醇销量相对应,并且该成本由基于活动的成本核算法定义。考虑了1G和2G乙醇生产之间的一体化,无需混合材料流,以改善技术估值分析。结果,对甘蔗汁乙醇获得的相当于17.2%的利润对于甜心高粱甘蔗。因此,技术估值表明了甜心甘蔗渣在生物遗料乙醇生产中的潜力。 (c)2021 elestvier有限公司保留所有权利。

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